Enhancing Adsorption of Dyes onto Clay in Bubble Column Adsorber

Herein, we studied the adsorption of acid dye onto Yemen natural clay in a bubble column adsorber. In addition, the effect of different parameters such as air flow rate, initial dye concentration and clay mass on the adsorption using clay has been investigated. The external and internal mass transfe...

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Main Authors: Mamdouh M. Nassar, Mohammad S. El-Geundi, Abdulrkib A. Al-Wahbi
Format: Article
Language:English
Published: Hindawi - SAGE Publishing 2012-07-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1260/0263-6174.30.7.567
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spelling doaj-de035131f20d4173b848e40ba170b7ae2021-04-02T13:35:19ZengHindawi - SAGE PublishingAdsorption Science & Technology0263-61742048-40382012-07-013010.1260/0263-6174.30.7.567Enhancing Adsorption of Dyes onto Clay in Bubble Column AdsorberMamdouh M. NassarMohammad S. El-GeundiAbdulrkib A. Al-WahbiHerein, we studied the adsorption of acid dye onto Yemen natural clay in a bubble column adsorber. In addition, the effect of different parameters such as air flow rate, initial dye concentration and clay mass on the adsorption using clay has been investigated. The external and internal mass transfers were analyzed based on external mass transfer and intra-particle diffusion models. Our results showed that the calculated external mass transfer coefficient increased with the increase in air flow rate and mass of clay, but decreased with the increase in initial dye concentration. For the external mass transfer, different coefficient variables can be correlated by the following dimensionless correlation: Sh/Sc 0.33 = 261.65 (F) 0.165 (C 0 ) −0.743 (m) −0.311 . The intra-particle diffusion coefficient, K P , was found to increase with the increase in air flow rate and initial dye concentration, and with the decrease in the mass of clay. For the intra-particle diffusion, the studied variables can be correlated by the equation K P = X (variable) Y . The results of this study reveal that air flow rate has more influence on increasing the rate of adsorption than the initial dye concentration and mass of clay.https://doi.org/10.1260/0263-6174.30.7.567
collection DOAJ
language English
format Article
sources DOAJ
author Mamdouh M. Nassar
Mohammad S. El-Geundi
Abdulrkib A. Al-Wahbi
spellingShingle Mamdouh M. Nassar
Mohammad S. El-Geundi
Abdulrkib A. Al-Wahbi
Enhancing Adsorption of Dyes onto Clay in Bubble Column Adsorber
Adsorption Science & Technology
author_facet Mamdouh M. Nassar
Mohammad S. El-Geundi
Abdulrkib A. Al-Wahbi
author_sort Mamdouh M. Nassar
title Enhancing Adsorption of Dyes onto Clay in Bubble Column Adsorber
title_short Enhancing Adsorption of Dyes onto Clay in Bubble Column Adsorber
title_full Enhancing Adsorption of Dyes onto Clay in Bubble Column Adsorber
title_fullStr Enhancing Adsorption of Dyes onto Clay in Bubble Column Adsorber
title_full_unstemmed Enhancing Adsorption of Dyes onto Clay in Bubble Column Adsorber
title_sort enhancing adsorption of dyes onto clay in bubble column adsorber
publisher Hindawi - SAGE Publishing
series Adsorption Science & Technology
issn 0263-6174
2048-4038
publishDate 2012-07-01
description Herein, we studied the adsorption of acid dye onto Yemen natural clay in a bubble column adsorber. In addition, the effect of different parameters such as air flow rate, initial dye concentration and clay mass on the adsorption using clay has been investigated. The external and internal mass transfers were analyzed based on external mass transfer and intra-particle diffusion models. Our results showed that the calculated external mass transfer coefficient increased with the increase in air flow rate and mass of clay, but decreased with the increase in initial dye concentration. For the external mass transfer, different coefficient variables can be correlated by the following dimensionless correlation: Sh/Sc 0.33 = 261.65 (F) 0.165 (C 0 ) −0.743 (m) −0.311 . The intra-particle diffusion coefficient, K P , was found to increase with the increase in air flow rate and initial dye concentration, and with the decrease in the mass of clay. For the intra-particle diffusion, the studied variables can be correlated by the equation K P = X (variable) Y . The results of this study reveal that air flow rate has more influence on increasing the rate of adsorption than the initial dye concentration and mass of clay.
url https://doi.org/10.1260/0263-6174.30.7.567
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